An asymmetrical rectangular loop with current I= 33A is placed in the xy plane in free space as shown below. The wires are parallel to either x axis or y axis. (a) Derive equations for all components of the magnetic flux density B at point P(xx2) from wires (1)-(4). (b) Find numerical values of all components of B at point P(x.y.z) from wire (1). (c) Find numerical values of all components of B at point P(xy.z) from wire (2). (d) Find numerical values of all components of B at point P(xV.2) from wire (3). (e) Find numerical values of all components of B at point P(xy.z) from wire (4). (f) Find numerical values of sum of all components of B at point P(xy.z) from wires (1)-(4). Assume a=5.3m, b=4.7m, c=3.8m, d=2.7m, x=1.2m, y=-1.5m, z=3.1m. P(x, y, z) -c (3) I -d y (4) (1)
An asymmetrical rectangular loop with current I= 33A is placed in the xy plane in free space as shown below. The wires are parallel to either x axis or y axis. (a) Derive equations for all components of the magnetic flux density B at point P(xx2) from wires (1)-(4). (b) Find numerical values of all components of B at point P(x.y.z) from wire (1). (c) Find numerical values of all components of B at point P(xy.z) from wire (2). (d) Find numerical values of all components of B at point P(xV.2) from wire (3). (e) Find numerical values of all components of B at point P(xy.z) from wire (4). (f) Find numerical values of sum of all components of B at point P(xy.z) from wires (1)-(4). Assume a=5.3m, b=4.7m, c=3.8m, d=2.7m, x=1.2m, y=-1.5m, z=3.1m. P(x, y, z) -c (3) I -d y (4) (1)
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